Characteristic of torsional vibration of mill main drive excited by electromechanical coupling

被引:0
|
作者
Yifang Zhang
Xiaoqiang Yan
Qihui Lin
机构
[1] University of Science and Technology Beijing,Institute of Mechanical Engineering
[2] Anhui University of Technology,School of Mechanical Engineering
关键词
rolling mill vibration; current harmonic; speed oscillation; electromechanical coupling; vibration characteristic;
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中图分类号
学科分类号
摘要
In the study of electromechanical coupling vibration of mill main drive system, the influence of electrical system on the mechanical transmission is considered generally, however the research for the mechanism of electromechanical interaction is lacked. In order to research the electromechanical coupling resonance of main drive system on the F3 mill in a plant, the cycloconverter and synchronous motor are modeled and simulated by the MTLAB/SIMULINK firstly, simulation result show that the current harmonic of the cycloconverter can lead to the pulsating torque of motor output. Then the natural characteristics of the mechanical drive system are calculated by ANSYS, the result show that the modal frequency contains the component which is close to the coupling vibration frequency of 42Hz. According to the simulation result of the mechanical and electrical system, the closed loop feedback model including the two systems are built, and the mechanism analysis of electromechanical coupling presents that there is the interaction between the current harmonic of electrical system and the speed of the mechanical drive system. At last, by building and computing the equivalent nonlinear dynamics model of the mechanical drive system, the dynamic characteristics of system changing with the stiffness, damping coefficient and the electromagnetic torque are obtained. Such electromechanical interaction process is suggested to consider in research of mill vibration, which can induce strong coupling vibration behavior in the rolling mill drive system.
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页码:180 / 187
页数:7
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